Relaxation is a key factor controlling the application of prestressing tendons. This paper focuses on the relaxation behavior of newly developed BFRP tendon for prestressing applications. A series of relaxation tests on BFRP tendons with three different initial stresses of 0.4 fu 0.5 fu and 0.6 fu (fu = tensile strength) were first conducted through a specially designed setup to eliminate the adverse impact of slippage at anchor zone. Theoretical value of relaxation rate based on an existing theory was calculated. An additional group of test was designed to clarify the effect of pretension on the relaxation behavior. The results show that the setup can effectively measure the relaxation loss of specimen, with monitoring the slippage at anchor zone simultaneously. Higher stress level can lead to larger relaxation loss. Theoretically calculated value of relaxation rate is consistent with the experimental results. The relaxation rates of BFRP tendon at 1000 h are 4.2 %, 5.3 % and 6.4 % under 0.4 fu, 0.5 fu and 0.6 fu, respectively. Pretension performs effective for the controlling of relaxation loss. Specimens with pretension treatment behave only 2.6 % relaxation rate under 0.5 fu at 1000 h, comparable to the relaxation rate of prestressing steel strand under 0.7 fu at 1000 h (2.5 %). The load retentions at one million hours are predicted to be 93.8 %, 91.8 % and 90.0 % for BFRP tendons under 0.4 fu 0.5 fu and 0.6 fu, respectively. Also, a load retention of 93.3 % is predicted for BFRP tendon with pretension treatment, under 0.5 fu, at one million hours.
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机译:松弛是控制预应力筋应用的关键因素。本文重点研究了新开发的BFRP筋在预应力应用中的松弛行为。首先通过特殊设计的装置对具有三个不同初始应力0.4 fu 0.5 fu和0.6 fu(fu =抗张强度)的BFRP腱进行了一系列松弛试验,以消除锚固区滑移的不利影响。基于现有理论计算松弛率的理论值。设计了另一组测试以阐明预拉伸对放松行为的影响。结果表明,该装置可以有效地测量试样的松弛损失,同时监测锚固区的滑动。较高的应力水平会导致较大的松弛损失。理论上计算的弛豫率值与实验结果相符。在0.4 fu,0.5 fu和0.6 fu下,BFRP肌腱在1000 h时的松弛率分别为4.2%,5.3%和6.4%。预张力对控制松弛损失有效。经过预拉伸处理的试样在1000 h下0.5 fu下仅表现出2.6%的松弛率,与1000 h在0.7 fu下的预应力钢绞线的松弛率(2.5%)相当。对于BFRP筋在0.4 fu 0.5 fu和0.6 fu下的情况,在一百万小时的载荷保持率预计分别为93.8%,91.8%和90.0%。同样,经预拉伸处理的BFRP肌腱在100万小时时以0.5 fu以下的压力预料会保持93.3%的负荷。
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